Department of Biomedical Engineering, Virginia Commonwealth University, 401 W. Main St., Richmond, VA 23284, USA.
Cells. 2021 Sep 16;10(9):2443. doi: 10.3390/cells10092443.
The extracellular matrix (ECM) plays a key role as both structural scaffold and regulator of cell signal transduction in tissues. In times of ECM assembly and turnover, cells upregulate assembly of the ECM protein, fibronectin (FN). FN is assembled by cells into viscoelastic fibrils that can bind upward of 40 distinct growth factors and cytokines. These fibrils play a key role in assembling a provisional ECM during embryonic development and wound healing. Fibril assembly is also often upregulated during disease states, including cancer and fibrotic diseases. FN fibrils have unique mechanical properties, which allow them to alter mechanotransduction signals sensed and relayed by cells. Binding of soluble growth factors to FN fibrils alters signal transduction from these proteins, while binding of other ECM proteins, including collagens, elastins, and proteoglycans, to FN fibrils facilitates the maturation and tissue specificity of the ECM. In this review, we will discuss the assembly of FN fibrils from individual FN molecules; the composition, structure, and mechanics of FN fibrils; the interaction of FN fibrils with other ECM proteins and growth factors; the role of FN in transmitting mechanobiology signaling events; and approaches for studying the mechanics of FN fibrils.
细胞外基质 (ECM) 在组织中充当细胞信号转导的结构支架和调节剂的关键角色。在 ECM 组装和周转时期,细胞上调 ECM 蛋白纤维连接蛋白 (FN) 的组装。FN 由细胞组装成粘弹性纤维丝,这些纤维丝可以结合多达 40 种不同的生长因子和细胞因子。这些纤维丝在胚胎发育和伤口愈合过程中组装临时 ECM 中发挥着关键作用。在疾病状态下,包括癌症和纤维化疾病,纤维丝组装也经常上调。FN 纤维丝具有独特的机械性能,使其能够改变细胞感知和传递的机械转导信号。可溶性生长因子与 FN 纤维丝的结合改变了这些蛋白质的信号转导,而 FN 纤维丝与其他 ECM 蛋白质(包括胶原、弹性蛋白和蛋白聚糖)的结合促进了 ECM 的成熟和组织特异性。在这篇综述中,我们将讨论从单个 FN 分子组装 FN 纤维丝的过程;FN 纤维丝的组成、结构和力学特性;FN 纤维丝与其他 ECM 蛋白质和生长因子的相互作用;FN 在传递机械生物学信号事件中的作用;以及研究 FN 纤维丝力学的方法。